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The newly discovered "Higgs" boson h^0, being lighter than the top quark t, opens up new probes for flavor and mass generation.
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See, e.g. ATLAS-CONF-2012-160 [ATLAS Collaboration]
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For simplicity and to reduce the number of parameters, we assume FCNH couplings to be hermitian
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If we adopt smaller m H + m_{H^{+}} , e.g. ∼ 300 \sim 300 GeV, the required ρ c t \rho_{ct} can be pulled down to perturbative regime. With small m H + m_{H^{+}} and ρ c t ∼ 1 \rho_{ct}\sim 1 , b → s γ b\to s\gamma data forces ρ b b \rho_{bb} and ρ t t \rho_{tt} to be significantly smaller than κ b b = 2 m b / v \kappa_{bb}=\sqrt{2}m_{b}/v and κ t t = 2 m t / v \kappa_{tt}=\sqrt{2}m_{t}/v , barring cancellations. We do not pursue such special possibilities in this paper
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